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Automatic Optic Disc Segmentation based on Image Brightness and Image Contrast

机译:基于图像亮度和图像对比的自动光盘分割

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Untreated glaucoma leads to permanent damage of the optic nerve and resultant visual field loss, which can progress to blindness. As glaucoma often produces additional pathological cupping of the optic disc (OD), cup-disc-ratio is one measure that is widely used for glaucoma diagnosis. This paper presents an OD localization method that automatically segments the OD and so can be applied for the cup-disc-ratio based glaucoma diagnosis. The proposed OD segmentation method is based on the observations that the OD is normally much brighter and at the same time have a smoother texture characteristics compared with other regions within retinal images. Given a retinal image we first capture the ODs smooth texture characteristic by a contrast image that is constructed based on the local maximum and minimum pixel lightness within a small neighborhood window. The centre of the OD can then be determined according to the density of the candidate OD pixels that are detected by retinal image pixels of the lowest contrast. After that, an OD region is approximately determined by a pair of morphological operations and the OD boundary is finally determined by an ellipse that is fitted by the convex hull of the detected OD region. Experiments over 71 retinal images of different qualities show that the OD region overlapping reaches up to 90.37% according to the OD boundary ellipses determined by our proposed method and the one manually plotted by an ophthalmologist.
机译:未经治疗的青光眼导致视神经和所产生的视野损失的永久性损坏,这可能导致失明。由于青光眼通常产生额外的视镜盘(OD)的病理拔罐,杯盘比是一种广泛用于青光眼诊断的措施。本文介绍了一种OD定位方法,可自动分段OD,因此可以应用于基于杯盘的青光眼诊断。所提出的OD分段方法基于观察结果,即OD通常更亮,同时与视网膜图像内的其他区域相比具有更平滑的纹理特征。考虑到视网膜图像,我们首先通过基于小邻窗口内的局部最大值和最小像素亮度构造的对比图像来捕获ODS平滑纹理特性。然后可以根据通过最低对比度的视网膜图像像素检测的候选OD像素的密度来确定OD的中心。之后,OD区域大致由一对形态操作确定,并且OD边界最终由被检测到的OD区域的凸壳装配的椭圆确定。在不同品质的71个视网膜图像上的实验表明,根据我们所提出的方法确定的OD边界椭圆形,OD区域的重叠达到高达90.37%,并且由眼科医生手动绘制的OD边界椭圆。

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